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In Vitro and In Vivo Approaches to Determine Intestinal Epithelial Cell Permeability
Published on: October 19, 2018
Immunosuppressant MPA Modulates Tight Junction through Epigenetic Activation of MLCK/MLC-2 Pathway via p38MAPK
Niamat Khan1, D V Krishna Pantakani2, Lutz Binder2
1Proteomics Group, Institute for Clinical Chemistry/UMG-Laboratories, University Medical CentreGoettingen, Germany; Department of Biotechnology and Genetic Engineering, Kohat University of Science and TechnologyKohat, Pakistan.
Background:
Mycophenolic acid (MPA) is an important immunosuppressive drug (ISD) prescribed to prevent graft rejection in the organ transplanted patients, however, its use is also associated with adverse side effects like sporadic gastrointestinal (GI) disturbances. Recently, we reported the MPA induced tight junctions (TJs) deregulation which involves MLCK/MLC-2 pathway. Here, we investigated the global histone acetylation as well as gene-specific chromatin signature of several genes associated with TJs regulation in Caco-2 cells after MPA treatment.
Results:
The epigenetic analysis shows that MPA treatment increases the global histone acetylation levels as well as the enrichment for transcriptional active histone modification mark (H3K4me3) at promoter regions of p38MAPK, ATF-2, MLCK, and MLC-2. In contrast, the promoter region of occludin was enriched for transcriptional repressive histone modification mark (H3K27me3) after MPA treatment. In line with the chromatin status, MPA treatment increased the expression of p38MAPK, ATF-2, MLCK, and MLC-2 both at transcriptional and translational level, while occludin expression was negatively influenced. Interestingly, the MPA induced gene expression changes and functional properties of Caco-2 cells could be blocked by the inhibition of p38MAPK using a chemical inhibitor (SB203580).
Conclusions:
Collectively, our results highlight that MPA disrupts the structure of TJs via p38MAPK-dependent activation of MLCK/MLC-2 pathway that results in decreased integrity of Caco-2 monolayer. These results led us to suggest that p38MAPK-mediated lose integrity of epithelial monolayer could be the possible cause of GI disturbance (barrier dysfunction) in the intestine, leading to leaky style diarrhea observed in the organ-transplanted patients treated with MPA.
Insights
Mycophenolic acid disrupts intestinal barrier integrity by altering gene expression via the p38MAPK pathway, potentially causing gastrointestinal issues in transplant patients.
Area of Science:
- Epigenetics
- Molecular Biology
- Pharmacology
Background:
- Mycophenolic acid (MPA) is an immunosuppressive drug used to prevent organ transplant rejection.
- MPA use is linked to gastrointestinal (GI) disturbances, possibly due to tight junction (TJ) deregulation.
- Previous work implicated the MLCK/MLC-2 pathway in MPA-induced TJ changes.
Purpose of the Study:
- Investigate the impact of MPA on global histone acetylation.
- Analyze gene-specific chromatin signatures of TJ-related genes in Caco-2 cells.
- Elucidate the role of the p38MAPK pathway in MPA's effects on intestinal cells.
Main Methods:
- Epigenetic analysis of histone modifications (acetylation, H3K4me3, H3K27me3) at gene promoters.
- Gene expression analysis at transcriptional and translational levels.
- Inhibition of p38MAPK using SB203580 to assess functional impact.
Main Results:
- MPA increased histone acetylation and H3K4me3 at p38MAPK, ATF-2, MLCK, and MLC-2 promoters, while increasing H3K27me3 at the occludin promoter.
- MPA upregulated p38MAPK, ATF-2, MLCK, and MLC-2 expression but downregulated occludin expression.
- Inhibition of p38MAPK blocked MPA-induced gene expression changes and functional alterations in Caco-2 cells.
Conclusions:
- MPA disrupts TJ structure and Caco-2 monolayer integrity through p38MAPK-dependent activation of the MLCK/MLC-2 pathway.
- p38MAPK-mediated loss of epithelial barrier function may cause GI disturbances like diarrhea in MPA-treated patients.
- Targeting the p38MAPK pathway could mitigate MPA-induced intestinal side effects.
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